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通过锌单原子胶稳定少原子铂簇用于高效反马氏烯烃硅氢化反应

Stabilizing Few-Atom Platinum Clusters by Zinc Single-Atom-Glue for Efficient Anti-Markovnikov Alkene Hydrosilylation.

作者信息

Li Ruilong, Yu Ge, Lin Ze, Lin Xingen, Du Junyi, Gao Xiaoping, Su Chenliang, Wu Yuen

机构信息

International Collaborative Laboratory of 2D Materials for Optoelectronics Science and Technology of Ministry of Education, Institute of Microscale Optoelectronics, Shenzhen University, Shenzhen, 518060, China.

School of Chemistry and Materials Science, University of Science and Technology of China, Hefei, 230026, China.

出版信息

Angew Chem Int Ed Engl. 2024 Jul 15;63(29):e202404568. doi: 10.1002/anie.202404568. Epub 2024 Jun 14.

DOI:10.1002/anie.202404568
PMID:38696242
Abstract

Few-atom metal clusters (FAMCs) exhibit superior performance in catalyzing complex molecular transformations due to their special spatial environments and electronic states, compared to single-atom catalysts (SACs). However, achieving the efficient and accurate synthesis of FAMCs while avoiding the formation of other species, such as nanoparticles and SACs, still remains challenges. Herein, we report a two-step strategy for synthesis of few-atom platinum (Pt) clusters by predeposition of zinc single-atom-glue (Zn) on MgO nanosheets (Pt-Zn/MgO), where FAMCs can be obtained over a wide range of Pt contents (0.09 to 1.45 wt %). Zn atoms can act as Lewis acidic sites to allow electron transfer between Zn and Pt through bridging O atoms, which play a crucial role in the formation and stabilization of few-atom Pt clusters. Pt-Zn/MgO exhibited a high selectivity of 93 % for anti-Markovnikov alkene hydrosilylation. Moreover, an excellent activity with a turnover frequency of up to 1.6×10 h can be achieved, exceeding most of the reported Pt SACs. Further theoretical studies revealed that the Pt atoms in Pt-Zn/MgO possess moderate steric hindrance, which enables high selectivity and activity for hydrosilylation. This work presents some guidelines for utilizing atomic-scale species to increase the synthesis efficiency and precision of FAMCs.

摘要

与单原子催化剂(SACs)相比,少原子金属簇(FAMCs)由于其特殊的空间环境和电子态,在催化复杂分子转化方面表现出优异的性能。然而,在避免形成其他物种(如纳米颗粒和SACs)的同时,实现FAMCs的高效精确合成仍然面临挑战。在此,我们报道了一种两步策略,通过在MgO纳米片(Pt-Zn/MgO)上预沉积锌单原子胶(Zn)来合成少原子铂(Pt)簇,其中在广泛的Pt含量(0.09至1.45 wt%)范围内都可以获得FAMCs。Zn原子可以作为路易斯酸性位点,通过桥连O原子实现Zn和Pt之间的电子转移,这在少原子Pt簇的形成和稳定中起着关键作用。Pt-Zn/MgO对反马氏规则烯烃硅氢化反应表现出93%的高选择性。此外,还可以实现高达1.6×10 h的出色周转频率活性,超过了大多数已报道的Pt SACs。进一步的理论研究表明,Pt-Zn/MgO中的Pt原子具有适度的空间位阻,这使得硅氢化反应具有高选择性和活性。这项工作为利用原子尺度物种提高FAMCs的合成效率和精度提供了一些指导。

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